在欺骗和DoS攻击下,复杂的动态网络的安全同步通过自动触发的冲动控制与启动延迟
Wei Zhang1, Xiangcheng Ye1, Junjian Huang1
1Chongqing Key Laboratory of Nonlinear Circuits and Intelligent Information Processing, Department of Electronics and Information Engineering, Southwest University, Chongqing 400715, China.
ISA transactions
|January 6, 2026
概括
本研究介绍了复杂动态网络的新型自触发冲动控制方法,增强了安全同步. 它有效地解决了延迟问题,并减少了通信负载,确保了网络稳定性,防止网络攻击.
科学领域:
- 控制理论 控制理论
- 网络安全 网络安全
- 动态系统 动态系统
背景情况:
- 复杂的动态网络 (CDN) 由于网络攻击和固有的延迟而面临安全挑战.
- 现有的自触发冲动控制 (STIC) 方法可能是计算密集的,可能无法完全解决延迟诱导的脱同步.
研究的目的:
- 开发一个高效的STIC战略,以加强CDN中的安全同步.
- 为了减轻因启动延迟引起的脱同步问题,并减少通信开销.
- 在各种网络攻击下,确保全球间隔对称稳定 (GAS-M).
主要方法:
- 一种具有固定停留时间的新型自触发机制 (STM) 防止Zeno行为和持续监控.
- 与STM集成对数定量仪,以最大限度地减少通信资源的消耗.
- 运用利亚普诺夫函数理论和图形理论来推导GAS-M同步标准.
主要成果:
- 拟议的STM有效地消除了Zeno行为,并解决了延迟诱导的脱同步.
- 逻辑定量器确保了较低的相对定量化误差,同时减少了通信负载.
- 衍生的GAS-M标准明确地将STM参数,网络拓和攻击强度联系起来.
结论:
- 开发的STIC战略与STM和量子化增强了CDN中的安全同步.
- 该方法在欺骗和拒绝服务 (DoS) 攻击方面具有强大性能,正如数值模拟所证明的那样.
- 这种方法为安全的网络控制提供了计算效率高和资源意识的解决方案.
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